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October 25, 2022Energy Reports1,464 citationsOpen Access

An overview of water electrolysis technologies for green hydrogen production

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SKS. Shiva KumarHLHankwon Lim

Key Points

  • To provide a comprehensive techno-commercial review of water electrolysis technologies, electrode materials, and commercialization challenges for green hydrogen production.
  • Systematic evaluation of various water electrolysis technologies and commercial electrolyzer systems.
  • Synthesis of recent advances in electrode materials, performance limitations, and production cost drivers.
  • Commercial electrolyzer deployment faces key technical and economic barriers linked to electrode material limitations and elevated production costs.
  • Identifies critical research gaps and outlines technological strategies required to facilitate cost-effective green hydrogen generation for industrial and transportation applications.

Abstract

Decarbonizing the planet is one of the major goals that countries around the world have set for 2050 to mitigate the effects of climate change. To achieve these goals, green hydrogen that can be produced from the electrolysis of water is an important key solution to tackle global decarbonization. Consequently, in recent years there is an increase in interest towards green hydrogen production through the electrolysis process for large-scale implementation of renewable energy-based power plants and other industrial, and transportation applications. The main objective of this study was to provide a comprehensive review of various green hydrogen production technologies especially on water electrolysis. In this review, various water electrolysis technologies and their techno-commercial prospects including hydrogen production cost, along with recent developments in electrode materials, and their challenges were summarized. Further some of the most successful results also were described. Moreover this review aims to identify the gaps in water electrolysis research and development towards the techno-commercial perspective. In addition, some of the commercial electrolyzer performances and their limitations also were described along with possible solutions for cost-effective hydrogen production Finally, we outlined our ideas, and possible solutions for driving cost-effective green hydrogen production for commercial applications. This information will provide future research directions and a road map for the development/implementation of commercially viable green hydrogen projects.

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Cite This Study

Kumar et al. (2022) studied this question.

synapsesocial.com/papers/69d744fb5f9a1dad5348fa75https://doi.org/10.1016/j.egyr.2022.10.127
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